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Novel Passive Calibration Method for Fully Polarimetric Near Field MIMO Imaging Radars

机译:全极化近场MIMO成像雷达的无源校准新方法

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In this paper a novel method for calibration of multiple-input multiple-output (MIMO), fully polarimetric near field radar systems is presented. The developed approach allows for the first time a practical and effective calibration, i.e. the correction / equalization of the frequency transfer function of all polarimetric radar channels even in a near field scenario where the target distance is not large compared to the MIMO antenna array dimension. In a first step, the mutual coupling between all channels is corrected by an empty space measurement. The polarimetric calibration is based on measurements with two simple, passive calibration standards. An offset short calibration of the co-polarized channels is conducted by using a mirroring reflection of a plane metal plate. A dihedral reflector is employed for the calibration of the cross-polarized channels. Since the dihedral reflection is distinctly directive and due to the close range acquisition condition, only channels with adjacent antenna elements can contribute to the calibration process. However, it is shown in this paper, that the sparse calibration data obtained from these few antenna combinations are sufficient for a successive calibration of all cross-polarized channels. This way, the novel method allows for a simple but yet effective calibration of fully polarimetric high resolution near field imaging MIMO radars based on two cost-efficient passive standards and with very low adjustment efforts during the calibration.
机译:本文提出了一种用于校准多输入多输出(MIMO),全极化近场雷达系统的新颖方法。所开发的方法首次实现了实用且有效的校准,即即使在目标距离相对于MIMO天线阵列尺寸不大的近场场景中,所有极化雷达通道的频率传递函数的校正/均衡也是如此。在第一步中,所有通道之间的相互耦合通过空白测量来校正。极化校准基于使用两个简单的无源校准标准进行的测量。通过使用平面金属板的镜面反射进行同极化通道的偏移短校准。使用二面反射器来校准交叉极化通道。由于二面反射明显是定向的,并且由于近距离采集条件的缘故,因此只有具有相邻天线元件的信道才能参与校准过程。但是,本文表明,从这几种天线组合获得的稀疏校准数据足以对所有交叉极化信道进行连续校准。这样,该新颖方法允许基于两个具有成本效益的无源标准,并且在校准期间的调整工作非常低,从而对全极化高分辨率近场成像MIMO雷达进行简单但有效的校准。

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